Hi Dr. Karpowicz,
Thank you very much for this amazing work, it really helps me on my experiments a lot! However, I encountered a difficulty while trying to simulate the following sequence: "SHG first in one BBO crystal, SFG later in another BBO.".
I simulated the SHG process 800.0 nm (o)+ 800.0 nm (o) = 400.0 nm(e). The next step I want to do is the conversion of the 400 nm (e) light into 400 nm (o) and then the SFG process 800.0 nm (o) + 400.0 nm (o) = 266.7. nm (e).
I found that "Rotate (90)" cannot change the polarization of the SH while maintaining the polarization of the fundamental light unchanged. The solution I can think of at present is to use a spectra filter to separately obtain the remaining FH and the generated SH, and then introduce them as two new pulses. However, this method seems overly cumbersome. Is there a better approach?
By the way, in the experiment, I can achieve a better SFG efficiency by changing the time delay between the two beams using a delay line. I wonder if this be achieved in simulation.
Many thanks for this impressive work and looking forward for your reply.
Sincerely,
Anivia Bai
Hi Dr. Karpowicz,
Thank you very much for this amazing work, it really helps me on my experiments a lot! However, I encountered a difficulty while trying to simulate the following sequence: "SHG first in one BBO crystal, SFG later in another BBO.".
I simulated the SHG process 800.0 nm (o)+ 800.0 nm (o) = 400.0 nm(e). The next step I want to do is the conversion of the 400 nm (e) light into 400 nm (o) and then the SFG process 800.0 nm (o) + 400.0 nm (o) = 266.7. nm (e).
I found that "Rotate (90)" cannot change the polarization of the SH while maintaining the polarization of the fundamental light unchanged. The solution I can think of at present is to use a spectra filter to separately obtain the remaining FH and the generated SH, and then introduce them as two new pulses. However, this method seems overly cumbersome. Is there a better approach?
By the way, in the experiment, I can achieve a better SFG efficiency by changing the time delay between the two beams using a delay line. I wonder if this be achieved in simulation.
Many thanks for this impressive work and looking forward for your reply.
Sincerely,
Anivia Bai